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SGL Carbon produces prototypes of fully integrated composite battery enclosures for NIO; battery swapping

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In collaboration with SGL Carbon, Chinese automotive manufacturer NIO has developed prototypes for battery enclosures made of carbon-fiber reinforced plastic (CFRP) for its NIO high performance electric vehicles. The battery enclosure is extremely lightweight, stable and safe.

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New efficient, low-temperature catalyst for converting water and CO to hydrogen and CO2

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Scientists in the US and China have developed a new low-temperature catalyst for producing high-purity hydrogen gas while simultaneously using up carbon monoxide (CO) via the water-gas shift (WGS) reaction. Its synergy with adjacent Mo sites in α-MoC can effectively activate water at low temperature. —Yao et al.

Water 186
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IEA: nuclear power can play a major role in transition to low emissions energy systems; Russia, China leading on new reactor starts

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In countries that choose to continue or increase their use of nuclear power, it can reduce reliance on imported fossil fuels, cut carbon dioxide emissions and enable electricity systems to integrate higher shares of solar and wind power. —IEA Executive Director Fatih Birol.

Russia 458
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Renewable-methanol fueled Geely cars in fleet testing in Iceland; 70% reduction in WTW CO2 compared to gasoline

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million investment in 2015) in Carbon Recycling International ( CRI ), an Icelandic company which produces renewable methanol using recycled CO 2 emissions sourced from a local thermal power plant and hydrogen made by splitting water with electrolysis (Power-to-Methanol). Geely is a shareholder ($45.5-million Earlier post.).

Iceland 170
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Researchers develop microwave-driven, energy-efficient process for magnesium production

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Mtons in 2012; the Chinese produce their magnesium in batch using the Pidgeon process. The hot reaction zone is either gas-fired, coal-fired, or electrically heated in a furnace; the condensing section is water-cooled. The cost of producing Chinese-Pidgeon magnesium is $2.50/kg. GJ/t, corresponding to a 68.6%

Energy 236
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China team develops efficient multifunctional catalyst for conversion of CO2 to gasoline-range hydrocarbons

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During CO 2 hydrogenation, CO 2 is initially reduced to CO by hydrogen via the reverse water-gas shift (RWGS) on Fe 3 O 4 sites, followed by a subsequent hydrogenation of CO to α-olefins via Fischer–Tropsch synthesis (FTS) on Fe 5 C 2 sites.

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Rice University lab develops dual-surface graphene electrode to split water into hydrogen and oxygen

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Researchers in the Rice University lab of chemist James Tour have produced dual-surface laser-induced graphene (LIG) electrodes on opposing faces of a plastic sheet that split water into hydrogen on one side and oxygen on the other side. Illustration of the integration of catalytic LIG electrodes as a full water electrolyzer. (a)

Water 150